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Pitch angle regulation of floating wind turbines with dynamic uncertainty and external disturbances

机译:具有动态不确定性和外部干扰的浮动风力发电机的俯仰角调节

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This paper addresses the problem of pitch angle regulation of floating wind turbines with the presence of dynamic uncertainty and unknown disturbances usually encountered in offshore wind turbines, where two control laws are derived for two different cases to continuously achieve zero pitch angle for the floating turbine. In the first case, the time-varying unknown coefficients that characterize the turbine's dynamics are assumed reasonably bounded by known functions, where robust controller is designed in terms of these known functions to achieve zero pitch angle for the turbine with exponential rate of convergence. While in the second case, the turbine's dynamics are considered to be characterized by unknown coefficients of unknown bounds. In this case, a sliding-mode adaptive controller is constructed in terms of estimated values for the unknown coefficients, where these values are continuously updated by adaptive laws associated with the proposed controller to ensure asymptotic convergence to zero for the turbine's pitch angle. Simulations are performed to demonstrate the validity of the proposed controllers to achieve the required regulation objective.
机译:本文提出了在海上风力发电机中经常遇到的动态不确定性和未知扰动的情况下,浮动风力发电机的桨距角调节问题,其中针对两种不同情况推导了两个控制律,以连续实现浮动风力发电机的零桨距角。在第一种情况下,假定涡轮机动力学特性随时间变化的未知系数被已知函数合理地限制,其中根据这些已知函数设计鲁棒控制器,以指数收敛速率实现涡轮机零桨距角。在第二种情况下,涡轮机的动力学被认为是由未知范围的未知系数来表征的。在这种情况下,根据未知系数的估计值构造滑模自适应控制器,其中这些值由与建议的控制器关联的自适应定律连续更新,以确保对于涡轮的俯仰角渐近收敛到零。进行仿真以证明所提出控制器的有效性,以达到所需的调节目标。

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